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Effect of isoprenaline on salivary gland lipids of rats fed a choline-deficient diet.

Male adult rats were fed choline deficient and a choline-supplemented diet for 3 weeks. Half the rats from each group were injected with isoprenaline (16 mg/kg body weight) and the remainder with saline. After 2 and 8 hours, rats were sacrificed, their submandibular salivary glands were disected out, and extracted for lipids. The fatty acid composition of total lipids and some neutral and phospholipid fractions were determined. Isoprenaline administration resulted in a slightly higher level of oleic acid in SMSG of rats fed choline-deficient but not the control diet. There was an increase in the free fatty acid (FFA) concentrations of the gland after 2 hours of isoprenaline treatment in rats fed the control diet; no such increase was observed in the choline-deficient group. The fatty acid composition of FFA fraction was also slightly changed as a result of isoprenaline treatment, but only in the choline-deficient group. The fatty acid composition of triglyceride (TG), phosphatidyl choline (PC), and phosphatidyl ethanolamine (PE) fractions was not changed.

Animals

Ethanolamine kinase activity and compositions of diacylglycerols, phosphatidylcholines and phosphatidylethanolamines in livers of choline-deficient rats.

These experiments were performed to find the reasons for the increased concentrations of docosahexaenoyl phosphatidylethanolamines (PE) in livers of choline-deficient rats. We measured the activity of ethanolamine kinase, which catalyzes the first step in PE formation. We also measured the compositions of PE and phosphatidylcholines (PC) and concentrations and fatty acid compositions of diacylglycerols (DG), which are precursors of PE. Young male rats were fed for one week a low-methionine, choline-deficient diet, or the same diet supplemented with choline. Ethanolamine kinase activity was measured in liver cytosol (100,000 g supernatant). Fatty acids were measured in total liver diacylglycerols and in microsomal PE and PC. Ethanolamine kinase activities were equal in choline-deficient and choline-supplemented rats. Concentrations of DG were elevated 6-fold by choline deficiency. The percentage of docosahexaenoic acid (22:6n-3) in microsomal PE was nearly doubled by choline deficiency. Although the increased concentrations of PE in choline-deficient livers cannot be attributed to increased activity of ethanolamine kinase, the rate of PE formation probably was increased by increases in concentrations of its precursors, including DG. The disproportionate increase in 22:6n-3 PE probably was caused by a selective formation of PE from DG that contain 22:6n-3.

Animals

Early histological and functional alterations of ethionine liver carcinogenesis in rats fed a choline-deficient diet.

The effects of feeding a choline-deficient (CD) or a choline-supplemented diet upon the early stages of DL-ethionine carcinogenesis in rat liver were investigated. Low levels of DL-ethionine (0.05 and 0.10%) when fed with a CD diet were found to induce within 4 weeks a massive proliferation of oval cells without significant cell necrosis or presence of inflammatory cell infiltrates. The same levels of ethionine when fed with a choline-supplemented diet caused no significant histological alteration of the liver. In rats fed the CD plus ethionine diets concomitant with the proliferation of oval cells, there was a marked elevation in the content of alpha1-fetoprotein in both liver and plasma. After specific immunofluorescence staining, oval cells stained intensely for albumin and alpha1-fetoprotein. Hepatocytes stained only for albumin, and bile duct cells stained for neither albumin nor alpha1-fetoprotein. These results indicate that a diet deficient in choline markedly alters the response of rat liver to carcinogenetic doses of ethionine. Thus, ethionine hepatocarcinogenesis in rats fed a CD diet may be a useful model for the exploration of the mechanism(s) whereby a dietary factor influences hepatocarcinogenesis.

Alanine Transaminase

Lipd profiles of plasma lipoproteins of fasted and fed normal and choline-deficient rats.

Three major density classes of lipoproteins and a residual protein (d greater than 1.21) were isolated by ultracentrifugation from plasma of fasted, fed normal, and choline-deficient rats. Lipid extracts were obtained from total plasma and the various density classes of lipoproteins, and each extract was examined in detail by thin layer and gas chromatographies. The results indicated essentially identical compositions of molecular species of phosphatidyl choline, which suggested their rapid equilibration among the different plasma lipoprotein classes. In contrast, the molecular species of the triacylglycerols and cholesteryl esters showed significant differences among the chylomicrons, very low and low, and high density lipoproteins, which excluded the possibility of their ready equilibration in vivo. Omission of choline from diet resulted in a sharp and statistically significant decrease in all lipid components of the very low and low density lipoproteins with 2 days. After 10 days of choline deficiency, the lipid levels of chylomicrons and very low and low density lipoproteins were ca. one-half the levels found in the choline supplemented animals, and there were discernible distortions in their lipid composition. Reintroduction of choline led to a prompt return to normal levels and lipid composition of both chylomicron and very low and low density lipoprotein fractions. The lack of equilibration of the triacylglycerols among the lipoprotein classes under normal conditions and in choline deficiency demonstrates an as yet unrecgnized source of compartmentation of plasma lipids.

Body Weight

[Xanthurenuria at different stages of liver lesion induced by protein and choline deficiency].

The parallelism between xanthurenuria and liver affections caused by protein and choline deficiency was studied. At the stages marking the development of lipohepatosis and fibrosis there occurred an intensive passage of xanthurenic acid. The intensity of xanthurenuria at the stage marking the appearance of hyperplastic nodes continued to gain strength. With progressive advance of pathological changes, which by the 9--12th months of the experiment reached the stage of a fully developed nodular cirrhosis xanthurenuria gradually stopped.

Amino Acids

Cholinergic influences on hypothalamic-pituitary-adrenocortical activity of stressed rats: an approach utilizing choline deficient diets.

Male rats were placed on choline (Ch) deficient diets for 3 to 14 days, without and with Ch (normal and large doses) supplemented in the drinking water, to determine whether altering the availability of Ch would affect the cholinergic system in relation to the latter's role in modulating the hypothalamic-pituitary-adrenocortical (HPA) system of non-stressed and stressed animals. The results indicate that the basal nonstressed activity of the HPA system, as assessed by adrenal and plasma corticosterone concentrations, was not affected by placing the animals on these diets for as long as 14 days. Furthermore, the in vitro production of corticosterone by these adrenal glands, in the presence or absence of adrenocorticotrophin, was similar to those observed in animals on the regular rat diet; however, the HPA responses to auditory (100 db) stress, and to a lesser extent hypercapnic (9% CO2) stress, were impaired on the Ch deficient diet (14 days), and these responses were partially corrected by supplementing the diet with Ch in the drinking water. Thus, the data suggest that altering the dietary intake of Ch may affect cholinergic activity, which in turn affects the HPA response to stressors.

Adrenal Glands

Alpha-fetoprotein and liver cell proliferation in rats fed choline-deficient diet.

Liver 3H-thymidine labelling index and serum AFP were determined in rats fed a standard laboratory or choline deficient diet. A significant increase in the rate of liver cell proliferation was evidenced in animals on the deficient diet. Furthermore, elevated serum AFP levels were detected in a proportion of these rats. It is suggested that increased synthesis of AFP corresponds to liver cell regeneration secondary to hepatic damage.

Animals

Beneficial effects of L-methionine in choline deficient diets of Oryzaephilus mercator (Fauvel) (Coleoptera).

Choline is an indispensable vitamin for Oryzaephilus mercator as its ommission in the diet results in slow growth and poor survival. These deficiency symptoms can be overcome by adding L-methionine to the choline-deficient diet. L-methionine however can improve the efficiency of the diet only up to a certain concentration beyond which no beneficial effects are recorded.

Animals

Induction of foci of altered, gamma-glutamyltranspeptidase-positive hepatocytes in carcinogen-treated rats fed a choline-deficient diet.

A series of experiments was performed to investigate whether, after exposure of rats to a chemical hepatocarcinogen, feeding a choline-deficient (CD) diet would promote the proliferation of initiated liver cells, and their evolution to foci of altered γ-glutamyltranspeptidase (GGT)-positive hepatocytes, without subjecting the animals to further experimental manipulations.Diethylnitrosamine (DEN), in single doses of 15-150 mg/kg body weight, was injected into male, Sprague-Dawley rats, either intact or 18 h after a partial hepatectomy (PH). The animals were then fed either a CD or a choline-supplemented (CS) diet for 2-8 weeks. Emergence in the liver of foci of altered, GGT+ hepatocytes was studied by histological and histochemical techniques. Foci, in varying numbers, developed in the liver of all rats fed the CD diet. The number of foci induced was larger when DEN was administered after PH rather than to intact rats. Foci developed in none of the livers of rats fed the CS diet, except in one experiment in which 30 mg DEN/kg body weight was injected after a PH. In all cases, foci of altered, GGT+ hepatocytes were shown to be α-foetoprotein after immunofluorescence staining of liver sections.It is concluded that feeding a CD diet exerts a strong promoting action on the proliferation and further evolution of liver cells initiated by a chemical carcinogen, providing the basis for a new and efficient procedure for the induction of foci of altered hepatocytes in rat liver.

Animals

Assay for free and total choline activity in biological fluids and tissues of rats and man with Torulopsis pintolopessi.

The sensitive, specific growth response to choline activity of the thermophilic enteric yeast Torulopsis pintolopessi enables estimation of free and bound choline activity in rat and human fluids and tissues- as little as 10 ng/ml of choline is measurable. Unlike other microbial assays, estimation of unbound (free) choline activity is not influenced by methionine or phospholipids. The method also distinguishes differences in choline activity of fluids and tissues from choline-deficient and choline-replete rats. Free and bound choline activity in blood, red blood cells, plasma, and liver from choline-deficient rats were almost 2-fold lower than from choline-supplemented animals. Free and bound choline activity in whole brain from choline-deficient rats were signifigantly higher (more than 2-fold). The application of the T. pintolopessi method in studying choline status in man and reasons for high choline activity in brain of choline-deficient rats are suggested.

Adult

Regulation of body cholesterol pools. Influence of cholesterol input and excretion in an animal model.

Biliary cholesterol excretion closely parallels lecithin excretion in the rat and may be increased by feeding an excess of choline and decreased by choline deficiency. To determine the relative influence of cholesterol input and excretion on whole body cholesterol metabolism, we have measured by compartmental analysis rates of cholesterol transport and pool sizes when both input and choline-mediated biliary excretion were increased and diminished. In choline-deficient animals with impaired excretion, plasma cholesterol was reduced. However, in deficient animals more cholesterol was transported into the slowly exchanging pool to increase pool size, and, when input was increased (by addition of cholesterol to diet), the slowly exchanging pool was even more markedly enlarged. In contrast, when excess choline was fed, plasma cholesterol was increased but excretion so exceeded transport into the slowly exchanging pool that pool size was actually reduced. Furthermore, in choline-fed animals with unimpaired excretion, addition of cholesterol to the diet to increase input did not result in pool expansion. Thus, in this model, cholesterol excretion and tissue deposition were reciprocally related, and, regardless of plasma cholesterol concentration and cholesterol input, stores were found to increase only when biliary excretion was impaired.

Animals

Effects of dietary choline and N,N-dimethylaminoethanol on lung phospholipid and surfactant of newborn rats.

Pups delivered by rats fed during pregnancy a choline-deficient (CD) diet containing 1% N,N-dimethylaminoethanol (DME) die within 36 hr of birth. The concentrations of sphingomyelins, phosphatidyl cholines, and disaturated phosphatidyl cholines in the lungs of these pups are lower than those in the lungs of pups delivered by dams fed a choline-supplemented diet (CS). The amount of surfactant isolated from the lung of the pups was also reduced. These changes were accompanied by alterations in the activity of enzymes (choline kinase, EC 2.7.1.32; choline phosphotransferase, EC 2.7.8.2) involved in the synthesis of lung lecithins. These results strongly suggest that pups delivered by dams fed a CD diet containg 1% DME die of respiratory distress syndrome due to altered metabolism of lung surfactant.

Animals

Effect of corticosteroids on sciatic nerve-tibialis anterior muscle of rats treated with hemicholinium-3. An experimental approach to a possible mechanism of action of corticosteroids in myasthenia gravis.

We studied the effect of intraperitoneally administered corticosteroids on the neuromuscular transmission in the sciatic nerve-tibialis anterior muscle preparation of the anesthetized rat stimulated at a rate of 10 Hz. Administered simultaneously with hemicholinium-3 (HC-3), 80 mug per kilogram (that is, half the lethal dose for 50 percent survival), prednisolone and dexamethasone cause a marked reversal of the block of the neuromuscular transmission caused by HC-3. The effect of aldosterone is very small. The blocking action of d-tubocurarine is not antagonized by either prednisolone or dexamethasone. Choline provides total protection against the HC-3 blockade, whereas physostigmine, in a just sublethal dose, is ineffective. We tentatively conclude that in myasthenia gravis the carrier-mediated transport of choline into the nerve endings may be deficient and that the beneficial effect of corticosteroids in this condition is based on their ability to ameliorate the deficient choline transport.

Animals

Protease inhibitors and experimental acute hemorrhagic pancreatitis.

Proteolytic enzyme inhibitors have been reported to decrease morbidity and mortality from certain types of experimental pancreatitis, although recent randomized trials have been unable to demonstrate that they are of benefit in the treatment of clinical acute pancreatitis. We have evaluated the effect of two proteolytic enzyme inhibitors (trasylol and chlorophyll-a, on experimental acute pancreatitis induced in mice by the feeding of a choline-deficient ethionine-enriched diet. The mortality rate and the biochemical and morphological severity of pancreatitis were not altered by either trasylol or chlorophyll-a administration. Thus, in this respect, diet-induced pancreatitis appears to resemble clinical acute pancreatitis. The reasons for the lack of effectiveness of proteolytic enzyme inhibitors in the treatment of both forms of pancreatitis are discussed.

Acute Disease

Loss of Mtarc1 Protects Against Steatotic Liver Disease in Mice.

BACKGROUND & AIMS: Metabolic dysfunction-associated steatotic liver disease (MASLD) spans from simple steatosis to metabolic dysfunction-associated steatohepatitis (MASH) and can progress to cirrhosis or hepatocellular carcinoma. Despite its prevalence, effective therapies are lacking. Recent genome-wide association studies identified a common missense variant (rs2642438) in the Mitochondrial Amidoxime Reducing Component 1 (MTARC1) gene that protects against liver cirrhosis without increasing cardiovascular disease risk. Biochemical and disease risk signatures associated with carriers of this missense variant also aligned with those of a known loss-of-function MTARC1 variant, suggesting mARC1 inhibition as a potential MASLD treatment. METHODS: To validate mARC1 loss-of-function as protective against MASLD, we generated Mtarc1 knockout (KO) mice and placed them on a choline-deficient, L-amino acid-defined, high-fat diet (CDAHFD). Effects of Mtarc1 KO on obesity and type 2 diabetes were explored using a high-fat diet. Hepatocytes from Mtarc1 KO mice were isolated to explore the molecular mechanisms by which Mtarc1 KO impacts lipid metabolism. RESULTS: Mtarc1 KO mice exhibited no vital growth or development defects. With a high-fat diet-induced obesity model, obese Mtarc1 KO mice exhibited reduced liver mass and lower cholesterol levels, with no effect on glucose homeostasis. In a CDAHFD-induced MASLD model, mARC1 deficiency significantly reduced liver steatosis, profibrosis, and inflammation. Untargeted metabolomics profiling further showed hepatic enrichment of phospholipids in Mtarc1 KO mice. Primary hepatocytes isolated from Mtarc1 KO mice exhibited reduced lipid droplet accumulation, decreased fatty acid uptake, and increased lipid secretion. CONCLUSIONS: These findings support mARC1 inhibition as a promising therapeutic strategy for MASLD/MASH.

Animals

Liver protocollagen proline hydroxylase in human liver diseases and experimental liver fibrosis.

Liver protocallagen proline hydroxylase activity (PPH activity) was determined in patients with various liver diseases, CCl4-induced liver fibrosis rats and cholin deficiency (tcd) fatty liver rats. The following results were obtained: Liver PPH activity in patients with chronic hepatitis was higher than that in patients with acute hepatitis, while the activity in patients with liver cirrhosis was much higher than that in patients with chronic hepatitis. The activity was higher in patients with chronic active hepatitis than in those with chronic inactive hepatitis. Patients with active and progressive liver cirrhosis were found to have an especially high PPH activity, in whom the activity reflected well the degree of liver fibrosis. Even though fibrosis in persistent hepatitis was almost negligible or slight, the degree of liver PPH activity in persistent hepatitis was similar to that in liver cirrhosis. Liver PPH activities in CCl4-induced liver fibrosis rats and CD fatty liver rats elevated proportionally to the lapse of time. Whilst liver PPH activity in rats of CD fatty liver without fibrosis in 23 to 31 weeks after the start of the experiment was slightly lower than that in rats of CD fatty liver with fibrosis. But liver PPH activity of the former was considerably higher than that of control rats.

Acute Disease